Gamma Modulator FHG65 Synchronizer FHG66

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1 Technical Information Gamma Modulator Synchronizer FHG66 Radiometric Measurement Effective Suppression of Background Radiation and Extraneous Radiation at the Gammapilot FMG60 Application Gamma Modulator Improving the measurement results of radioactive measurement through the effective suppression of background radiation and extraneous radiation (e.g. from nondestructive material testing) at the Gammapilot FMG60 Synchronizer FHG66 Synchronization of an unlimited number of Gamma Modulators Your benefits Unhindered measurement with Gammapilot M FMG60 in the event of Interference radiation from nondestructive material testing up to 50 μsv/h Fluctuating background radiation Easy integration into existing systems No maintenance required Easy installation in conjunction with FQG61/62 (QG020/100) source containers TI423F/00/en/

2 Table of contents Function and system design System Design System requirements at Gammapilot M FMG Gamma Modulator Synchronizer FHG Cascading multiple Synchronizers FHG Gamma Modulator : technical data Power supply Alarm output Environment Interference suppression Gamma Modulator : electrical connection Connection compartment Cable entries Terminal assignment Gamma Modulator : installation General installation conditions Mounting multiple Gamma Modulators Mounting at diagonally irradiated pipes Water cooling Synchronisator FHG66: Ordering information Order code Certificates and approvals CE mark Explosion protection Other approvals Overspill protection Other standards and guidelines Documentation Gamma Modulator Synchronizer FHG FQG61/FQG62 source containers QG020/QG100 source containers Gamma emitter FSG60/FSG Gamma emitter Gammapilot M FMG Gamma Modulator : mechanical construction 12 Dimensions Weight Durability of the bearings Material Gamma Modulator : ordering information Gamma Modulator product structure Synchronizer FHG66: technical data Input Output Power supply Environment Synchronizer FHG66: electrical connection Terminals Terminal assignment Synchronizer FHG66: installation Mounting location Installation instructions Synchronizer FHG66: mechanical construction Dimensions Weight Material Synchronizer FHG66: human interface Display elements Operating elements Endress + Hauser

3 Function and system design System Design System requirements at Gammapilot M FMG60 Gamma Modulator A measuring point with the Gamma Modulator consists of the following components: Gamma Modulator Gammapilot M FMG60 Radiation Source Container FQG61 (QG020) or FQG62 (QG100) Radiation source 137 Cs or 60 Co if multiple Gamma Modulators are used: Synchronizer FHG66 In order to be able to evaluate the signal created by the Gamma Modulator, the Gammapilot M FMG60 must be equipped with at least one of the following software versions: HART electronics for SIL devices of short level limit detectors (200 mm or 400 mm): SW or higher for all other device types: SW or higher PROFIBUS PA electronics SW or higher FOUNDATION Fieldbus electronics SW or higher In a radiometric measuring point with Gammapilot FMG60, the Gamma Modulator is mounted in front of the radiation exit channel of the source container. It contains a shaft slotted along the longitudinal axis. This shaft rotates continuously and alternately screens off the gamma beam at a frequency of 1 Hz or allows it through. Due to this frequency, the useful beam differs from fluctuating ambient interference radiation and from interference radiation occurring sporadically (e.g. from nondestructive material testing). Using a frequency filter, the Gammapilot M FMG60 can thus separate the useful signal from interference radiation. In this way, it is possible to continue measuring even if interference radiation occurs, which, in turn, increases the measuring certainty and system availability. FQG61 FQG62 1 Gammapilot M FMG60 1: Interference radiation L00-xxx xx-001! Note! The Gamma Modulator and the Gammapilot M FMG60 are not interconnected electrically. When commissioning the Gammapilot FMG60, the "beam type" (*02) parameter must be set to "modulated". Endress + Hauser 3

4 Synchronizer FHG66 In a measuring point with multiple radiation sources, a Gamma Modulator has to be mounted on every source container. The Synchronizer FHG66 synchronizes the individual modulators to common mode. A Synchronizer FHG66 can synchronize up to three Gamma Modulators. (For more than 3 modulators refer to ä 5) VDC SYNC VDC SYNC1 FHG66 FGG VDC Synchronization of up to three source containers L00-FHG66xxx xx-001! Note! It is recommended to install the switch for the supply voltage in the proximity of the instrument and to mark it as a disconnector for the instrument. 4 Endress + Hauser

5 Cascading multiple Synchronizers FHG66 If more than three radiation sources are used, the synchronization chain must be extended by cascading, where another Synchronizer (B) is connected to one of the outputs of the Synchronizer (A) instead of a modulator. All connected Gamma Modulators then operate in common mode. By interconnecting this cascading function, any number of modulators can be synchronized with one another. SYNC VDC SYNC VDC SYNC VDC VDC SYNC1 CASC IN SYNC3 FHG66 FHG66 FHG VDC SYNC2 B FHG66 A VDC A: primary Synchronizer; B: cascaded Synchronizer L00-FHG66xxx xx-002 Endress + Hauser 5

6 Gamma Modulator : technical data Power supply Supply voltage Power consumption Overvoltage category 18 to 36 VDC 3.2 W II Protection class 1 Potential equalization Present Alarm output The Gamma Modulator does not have an alarm output of its own. Errors are indicated in the following way: if a Synchronizer FHG66 is connected: The error is reported via the synchronization terminals to the Synchronizer FHG66. The alarm relay of the FHG66 indicates the error. if no Synchronizer FHG66 is connected: In the case of an error, the switches its motor off. This reduces the current consumption to less than 30 ma, which can be detected and indicated by an external current monitoring device (e.g. Dold IK , DC24V, < 0.1 A). DC 24V A1 +/i 11 k L+ IK DC 24V < 0.1 A A2 - L- 0V A L00-xxx yy-003 Environment Ambient temperature range Storage temperature Housing degree of protection Climate class Vibration resistance Shock resistance Electromagnetic compatibility without water cooling: -40 C to +60 C (-40 F to 140 F) with water cooling: at the water cooling jacket: 0 C to 120 C (32 F to 248 F) at the terminal housing: max. 75 C (167 F) -40 C to 75 C (-40 F to 167 F) IP65/67; NEMA 4/6 DIN EN examination Z/AD DIN EN test Fh; 10 to 2000 Hz, 1 (m/s 2 ) 2 /Hz DIN EN ; test Ea; 30 g, 18 ms, 3 shocks/direction/axis Interference emission to EN 61326, Appendix A (Industrial) and NAMUR Recommendation NE21 6 Endress + Hauser

7 Interference suppression max. 10 μs/h per 1000 mm measuring length Measuring range [mm] Maximum interference suppression [μsv/h] (cascading) 1 Endress + Hauser 7

8 Gamma Modulator : electrical connection Connection compartment 2 * 3 * 1 L00-xxx yy-002 1: Cover of the connection compartment; 2: ground terminal of the modulator; 3: ground terminal of the water cooling jacket Cable entries 2 cable entries (for supply voltage and synchronization connection) Versions: M20 gland M20 thread G ½ thread NPT ½ thread Terminal assignment Ex d, Ex t, non-ex Ex de L+ (1) L- (2) + (3) - (4) L- (2) VDC L+ (1) VDC SYNC IN + (3) SYNC IN - (4) L00-xxx yy-001 Terminal Name Meaning 1 L+ 2 L- Supply voltage; 18 to 36 VDC 3 SYNC + Synchronization connection (to connect the Synchronizer FHG66) 4 SYNC - 12 VDC, 5 ma Install a circuit breaker in the supply line. Use wires of 0.5 mm 2 cross section. 8 Endress + Hauser

9 Gamma Modulator : installation General installation conditions " Caution! The Gamma Modulator is mounted directly on the mounting flange of the FQG61,(QG020) or FQG62 (QG100) source container. 1) It is absolutely essential to ensure the device is oriented correctly when mounting since the radiation exit channel is not located in the middle of the source container. The arrow on the mounting plate of the Gamma Modulator must point in the direction of the transporting lug of the source container. Measurement is not possible otherwise.! L00-xxx xx-001.eps The source container together with the Gamma Modulator must be mounted as close as possible to the tank or measuring tube. The unit must be mounted on a low-vibration construction. Use at least 4 threaded bolts (M16); Torque: Steel: 210 Nm Stainless Steel: 144 Nm When mounting, attention must be paid to the total weight consisting of the source container and Gamma Modulator. Ensure sufficient stability is guaranteed. Where necessary, an additional support must be provided. After mounting, the local dose rate in the vicinity of the source container and the Gamma Modulator must be measured. Any control zones must be cordoned off (see Technical Information TI264F). 1) For applications with the QG2000 source container: please contact your local Endress+Hauser sales office. Endress + Hauser 9

10 Mounting multiple Gamma Modulators! Note! If multiple Gamma Modulators are used in a measuring point, they have to run synchronically. The Synchronizer FHG66 is used for this purpose. The synchronization requires that all the Gamma Modulators be aligned the same. A mark is provided at the top of the Gamma Modulator to align the units. This mark must be aligned in the same way relative to the source container on all the participating Gamma Modulators. 1 1 L00-xxx yy-002 1: Marking for aligning multiple Gamma Modulators This mark must be aligned in the same way relative to the source container on all the Gamma Modulators in a measuring point. 10 Endress + Hauser

11 Mounting at diagonally irradiated pipes With diagonally irradiated pipes the clamping device FHG61 must be used for mounting. For details see Mounting Instructions KA261F. Water cooling The following applies to the FMG60 Gamma Modulator with water cooling: Material: 316L and 304 Water connection: 2 x G 1/4"A, DIN ISO 228 Return temperature: max. 40 C (104 F); temperature monitoring recommended Water pressure: 4 to 6 bar Water flow rate: min. 60 l/h QG20 QG100 QG20 QG100 L00-xxx yy-003 " Caution! The water must always be let in from the bottom to ensure that the water jacket is completely filled. Endress + Hauser 11

12 Gamma Modulator : mechanical construction Dimensions Gamma Modulator Ex de 142 (5.6) 81 (3.2) 144 (5.7) 532 (20.9) 560 (22.0) 572 (22.5) 161 (6.3) 172 (6.8) Ex d, Ex t, non-ex 142 (5.6) 81 (3.2) 144 (5.7) 495 (19.5) 524 (20.6) 537 (21.1) 161 (6.3) 172 (6.8) Left: without water jacket; right: with water jacket L00-xxx xx Endress + Hauser

13 Examples of mounting brackets (supplied by customer) 1 2 8x45 Ø 120 (4.7) A C A 18 (0.7) 18 (0.7) B B DIN ANSI A 68.9 (2.7) 72.9 (2.9) B C (6.5) (6.9) (7.1) (7.5) 1: Mounting plate (Bolt circle according to DN 100 PN 16 or ANSI 4" 150 psi) 2: L profile L00-xxx xx-002 Weight Durability of the bearings Without water cooling jacket: max. 18 kg (40 lbs) With water cooling jacket (empty): max. 21 kg (46 lbs) With water cooling jacket (full): max. 25 kg (55 lbs) 36 years at maximum load in continuous operation. Endress + Hauser 13

14 Material L00-xxx xx-004 Number Part Material 1 Housing 304 (1.4301) 2 Water cooling jacket 316L (1.4404) 3 Cable entry see table below 4 Screws A O-ring FKM 70 6 Ground terminal 316Ti (1.4571); 304 (1.4301); A2 ; A4 7 O-ring FKM 70 8 Cooling water connection PA66 9 Safety pin for the lid 304 (1.4301); ; A2 10 Nameplate and grooved pins 304 (1.4301); A2 Material of cable entry and seal Feature 040: "Cable entry, power supply" 316L (1.4435) 12L13 (1.0718) 304 (1.4301) MS EPDM70+PTFE A: M20 gland     B: M20 thread    C: G 1/2 thread     D: NPT 1/2 thread    14 Endress + Hauser

15 Gamma Modulator : ordering information Gamma Modulator product structure 010 Approval A Non-hazardous area 1 ATEX II 2G Ex de IIC T6/T5 3 ATEX II 2G Ex d IIC T6/T5 5 ATEX II 2D Ex t IIIC T90 C/T105 C IP65 G IECEx Ex de IIC T6/T5 Gb H IECEx Ex d IIC T6/T5 Gb N CSA General Purpose P CSA Cl.I Gr.A-D/Cl.II Gr.E-G/Cl.III, Cl. I Zone 1 S FM Cl.I Gr.A-D/Cl.II Gr.E-G/Cl.III, Cl. 1 Zone 1 K TIIS Ex d IIC T6 C NEPSI Ex de IIC T5/T6 D NEPSI Ex d IIC T5/T6 020 Power supply VDC 030 Housing A Cable entry, power supply A M20 gland B M20 thread C G ½ thread D NPT ½ thread 050 Securing unit 1 Level, limit detection, density 2 Level, limit detection, density + water jacket - Product designation Endress + Hauser 15

16 Synchronizer FHG66: technical data Input Output Cascading input For connection of an additional Synchronizer FHG66 Galvanically isolated from power supply and output Connecting cable: twin-core; shielding not required (apart from in the event of strong electromagnetic interference) Cable requirements: Max. capacitance: 120 nf Max. resistance 1000 Ω Max. inductance: 0.65 mh Cable: not shielded/not twisted Signal transmission: closed current loop with 0 to 5 ma, max. 12 V Alarm relay Type Switching delay Switching capacity Operating life Function indicator Overvoltage category Protection class Floating changeover contact 0 to 3 s U~ maximum 250V I~ maximum 2 A P~ maximum 500 VA at cosϕ 0.7 U- maximum 40 V I- maximum 2 A P- maximum 80 W Min switching cycles with maximum contact load Light emitting diodes for operation, faults and error assignment; device detects and reports errors in the configuration and in the connected devices II 2 (double/reinforced insulation) Signal on alarm Fault indicated by red LED Fault assigned by yellow LEDs Alarm relay deenergized Power supply Supply voltage Power consumption Overvoltage category 18 to 36 VDC (power supply with safe isolation required) 1 W II Protection class 2 Contamination level 2 Environment Ambient temperature range Mounted individually: -20 C to +60 C Mounted in a row without lateral spacing: -20 C to +50 C When installed in protective housing: -20 C to +40 C Storage temperature Climate and mechanical application class Degree of protection Electromagnetic compatibility -20 C to +85 C (preferably at 20 C) 3C3 in accordance with DIN EN M2 in accordance with DIN EN IP20 Interference emission to EN61326, class B equipment Interference immunity to EN61326, Appendix A (Industrial) and NAMUR Recommendation NE Endress + Hauser

17 Synchronizer FHG66: electrical connection Terminals " Caution! Pluggable screw terminals Wire cross-section: mm 2 for supply voltage and relay mm 2 for signal line The terminals may only be repalced by identical types A B FHG66 AB CASC_IN SYNC 1 SYNC 2 SYNC 3 L00-FHG66xxx yy-001 Terminal assignment Terminal Meaning Remarks Power supply 1 L+ 18 to 36 2 L- VDC power supply with safe isolation required Alarm relay 10 Changeover 11 NC contact Is connected to contact 10 if an error is present 12 NO contact Is connected to contact 10 during error-free operation Synchronization outputs 33/34 Synchronization output 1 Synchronization signal: 12 V/5 ma 31/32 Synchronization output 2 The following can be connected: 21/22 Synchronization output 3 A Gamma Modulator or An additional Synchronizer FHG66 (for cascading) Polarity is random. Cascading input 23/24 Cascading input For connecting an additional, upstream Synchronizer FHG66. All the Gamma Modulators connected to the Synchronizers then run in common mode. Cascading signal: 12 V/5 ma Endress + Hauser 17

18 Synchronizer FHG66: installation Mounting location The Synchronizer FHG66 must be housed in a cabinet outside the hazardous area and protected against mechanical influences. If mounting outdoors, a protective housing (min. IP65) must be used. EX EX min. IP 65 FHG66 L00-FHG66xxx xx-xx-001 Installation instructions A a EN TH - 35x7.5 EN TH - 35x15 b B 1. a b b a 2. A: Mounting on top-hat rail B: Disassembly (1: remove terminal blocks; 2: remove device) L00-FHG66xxx xx-001 " Caution! The ventilation slots of the housing must not be blocked. 18 Endress + Hauser

19 Synchronizer FHG66: mechanical construction Dimensions 22,5 mm mm (4.4 ) FHG66 A B AB CASC_IN SYNC 1 SYNC 2 SYNC 3 95 mm (3.7 ) 108 mm (4.3 ) L00-FHG66xxx xx-001 Weight Material Approx. 150 g Housing Polycarbonate Color: light-gray, RAL 7035 Front cover Polyamide PA6 Color: film, blue NCS1040-B206 Fixing slide (to secure to top-hat rail) Polyamide PA6 Color: light-gray, RAL 7035 Endress + Hauser 19

20 Synchronizer FHG66: human interface Display elements LEDs Visible when the front panel is closed A B FHG66 A B AB CASC_IN SYNC 1 SYNC 2 SYNC 3 AB CASC_IN SYNC 1 SYNC 2 SYNC 3 L00-FHG66xxx xx-002 LED Color Meaning A,B Green Red Yellow Operational Is lit as soon as the supply voltage is switched on. Error Is lit if an error is present at one of the synchronization outputs or the cascading input. Error identifier Indicates the synchronization output where the error is present: A: Error at SYNC 1 B: Error at SYNC 2 A and B: Error at SYNC 3 A and B off, but red LED lit: Error at the cascading input (CASC_IN) 20 Endress + Hauser

21 Gamma Modulator, Synchronizer FHG66 Operating elements DIP switches Behind the swing-back front panel ON OFF DIP ON DIP ON CASC_IN SYNC 1 SYNC 2 SYNC SYNC 3 CASC_IN SYNC 2 SYNC 1 A B 1 CASC_IN 2 SYNC SYNC 3 ON / OFF SYNC 2 FHG66 AB CASC_IN SYNC 1 SYNC 2 SYNC L+ L- 1 2 L00-FHG66xxx xx-001 The DIP switches are used to switch the synchronization outputs and the cascading input on and off in accordance with the diagram above. DIP switches Input/output 1 Cascading input (terminals 23/24) 2 Synchronization output 1 (terminals 33/34) 3 Synchronization output 2 (terminals 31/32) 4 Synchronization output 3 (terminals 21/22) Order code Synchronisator FHG66: Ordering information Endress + Hauser 21

22 Certificates and approvals CE mark Explosion protection Other approvals Overspill protection Other standards and guidelines The measuring system meets the legal requirements of the EC Directives. Endress+Hauser confirms successful testing of the device by affixing to it the CE mark. Gamma Modulator According to product structure ( ä 15) Synchronizer FHG66 CSA GP May be applied in max-level applications in connection with the Gammapilot M FMG60 (200/400 mm) in SIL 2/3 according to IEC not tested for overspill protection according to WHG IEC Degrees of protection by housing (IP code) IEC Electromagnetic compatibility (EMC requirements) IEC Protection measures for electrical equipment for measurement, control, regulation and laboratory procedures. NAMUR Association for Standards for Control and Regulation in the Chemical Industry Documentation Gamma Modulator Synchronizer FHG66 FQG61/FQG62 source containers QG020/QG100 source containers Gamma emitter FSG60/ FSG61 Gamma emitter Gammapilot M FMG60 BA373F Operating Instructions for Gamma Modulator and Synchronizer FHG66 TI435F Technical Information for source containers FQG61 and FQG62 (in phase out) TI264F Technical Information for source containers QG020 and QG100 (in phase out) TI439F Technical Information for gamma emitters FSG60/FSG61 TI213F Technical Information for gamma emitters (in phase out) TI363F Technical Information for FMG60 Gammapilot M BA236F Operating Instructions for FMG60 Gammapilot M, HART BA329F Operating Instructions for FMG60 Gammapilot M, PROFIBUS PA BA330F Operating Instructions for FMG60 Gammapilot M, Foundation Fieldbus BA287F Description of Device Functions for FMG60 Gammapilot M 22 Endress + Hauser

23 Endress + Hauser 23

24 Deutschland Österreich Schweiz Endress+Hauser Messtechnik GmbH+Co. KG Colmarer Straße Weil am Rhein Fax 0800 EHFAXEN Fax Vertrieb Beratung Information Auftrag Bestellung Tel EHVERTRIEB Tel info@de.endress.com Service Help-Desk Feldservice Ersatzteile/Reparatur Kalibrierung Tel EHSERVICE Tel service@de.endress.com Technische Büros Hamburg Berlin Hannover Ratingen Frankfurt Stuttgart München Endress+Hauser Ges.m.b.H. Lehnergasse Wien Tel Fax info@at.endress.com Endress+Hauser Metso AG Kägenstrasse Reinach Tel Fax info@ch.endress.com TI423F/00/en/03.10 FM+SGML 6.0 ProMoDo

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